Spectral representations of digital signals using non-binary Galois fields.

I. Suleimenov, D. Matrassulova, I. Moldakhan
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引用次数: 1

Abstract

The article shown that for digital signal processing varying in a limited range of amplitudes it is advisable to consider a set of signal levels through its mapping into certain Galois field, i.e., finite commutative body. In this case, the signal coding differs from binary, however, this creates quite definite advantages. In particular, a modified Walsh basis where the elements +1 and -1 are treated as elements of a non-binary Galois field can be used. The main difference of such use of the Walsh basis is that the elements of the Galois field corresponding to the spectral components belong to the same set as the original signal levels do. This provides a significant reduction in the amount of information when transmitting information about the signal, presented in the form of its spectrum. A specific example of using the Galois field for processing a time series of data that simulates a digital signal is presented
使用非二进制伽罗瓦场的数字信号的频谱表示。
本文表明,对于在有限幅度范围内变化的数字信号处理,最好考虑一组信号电平通过其映射到一定的伽罗瓦场,即有限交换体。在这种情况下,信号编码不同于二进制,然而,这创造了相当明确的优势。特别地,可以使用一种改进的Walsh基,其中元素+1和-1被视为非二进制伽罗瓦域的元素。这种沃尔什基使用的主要区别在于,频谱分量对应的伽罗瓦场元素与原始信号电平属于同一集合。在传输以频谱形式表示的信号信息时,这大大减少了信息量。给出了使用伽罗瓦场处理模拟数字信号的时间序列数据的具体示例
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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